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Modelling and mutational analysis of Aspergillus nidulans UreA a member of the subfamily of urea/H+ transporters in fungi and plants

机译:构巢曲霉UreA(真菌和植物中尿素/ H +转运蛋白亚家族的成员)的建模和突变分析

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摘要

We present the first account of the structure–function relationships of a protein of the subfamily of urea/H+ membrane transporters of fungi and plants, using Aspergillus nidulans UreA as a study model. Based on the crystal structures of the Vibrio parahaemolyticus sodium/galactose symporter (vSGLT) and of the Nucleobase-Cation-Symport-1 benzylhydantoin transporter from Microbacterium liquefaciens (Mhp1), we constructed a three-dimensional model of UreA which, combined with site-directed and classical random mutagenesis, led to the identification of amino acids important for UreA function. Our approach allowed us to suggest roles for these residues in the binding, recognition and translocation of urea, and in the sorting of UreA to the membrane. Residues W82, Y106, A110, T133, N275, D286, Y388, Y437 and S446, located in transmembrane helixes 2, 3, 7 and 11, were found to be involved in the binding, recognition and/or translocation of urea and the sorting of UreA to the membrane. Y106, A110, T133 and Y437 seem to play a role in substrate selectivity, while S446 is necessary for proper sorting of UreA to the membrane. Other amino acids identified by random classical mutagenesis (G99, R141, A163, G168 and P639) may be important for the basic transporter's structure, its proper folding or its correct traffic to the membrane.
机译:我们使用构巢曲霉UreA作为研究模型,首次说明了真菌和植物的尿素/ H + 膜转运蛋白亚家族蛋白的结构-功能关系。根据溶血性弧菌钠/半乳糖共转运蛋白(vSGLT)和液化微细菌(Mhp1)的Nucleobase-Cation-Symport-1苄基乙内酰脲转运蛋白的晶体结构,我们构建了UreA的三维模型,并结合位点-指导和经典的随机诱变,导致对UreA功能重要的氨基酸的鉴定。我们的方法允许我们建议这些残基在尿素的结合,识别和转运以及UreA与膜的分选中的作用。发现位于跨膜螺旋2、3、7和11的残基W82,Y106,A110,T133,N275,D286,Y388,Y437和S446与尿素的结合,识别和/或转运以及分选有关膜上的UreA。 Y106,A110,T133和Y437似乎在底物选择性中起作用,而S446是将UreA正确分选到膜上所必需的。通过随机经典诱变鉴定的其他氨基酸(G99,R141,A163,G168和P639)对于基本转运蛋白的结构,其正确折叠或正确转运到膜可能很重要。

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